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Quantum-mechanical versus semiclassical capture and transport properties in quantum well laser structures

机译:量子阱激光结构中的量子力学与半经典捕获和传输特性

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We have studied experimentally and modelled theoretically the capture properties and transport mechanisms of electrons and holes in laser structures. We describe first the extreme case where the barrier thickness is very large: then semiclassical drift-diffusion equations may be applied and quantum-mechanical effects at the edge of the well are negligible. A second extreme case occurs when the barrier is narrow enough for quantum mechanics to apply fully. There, strong variations of the capture time with the well width are expected and observed. In real laser structures, dimensions are such that we are in an intermediate case and both aspects have to be taken into account. We give some typical values for diffusion/capture mechanism induced delay times in such a case.
机译:我们通过实验和理论研究了激光结构中电子和空穴的捕获特性和传输机制。我们首先描述了势垒厚度非常大的极端情况:然后可以应用半经典漂移扩散方程,并且井边缘的量子力学效应可以忽略不计。第二种极端情况发生在势垒足够窄,量子力学可以完全应用时。在那里,预计并观察到捕获时间与井宽的强烈变化。在真正的激光结构中,尺寸是这样的,我们处于中间情况,必须考虑这两个方面。在这种情况下,我们给出了扩散/捕获机制引起的延迟时间的一些典型值。

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